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首页> 外文期刊>Journal of Hazardous Materials >Unique root exudate tartaric acid enhanced cadmium mobilization and uptake in Cd-hyperaccumulator Sedum alfredii
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Unique root exudate tartaric acid enhanced cadmium mobilization and uptake in Cd-hyperaccumulator Sedum alfredii

机译:独特的根系分泌物酒石酸增强镉超富集景天景天中的镉动员和吸收。

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摘要

Low molecular weight organic acids (LMWOA) involved in heavy metal tolerance, translocation, and accumulation in plants. However, underlying mechanism of LMWOA secretion in metal mobilization and uptake in hyperaccumulator still need to be identified. In this study, a C-13 labeling rhizobox was designed to investigate the composition and distribution of LMWOA in the rhizosphere of S. alfredii. The result showed that about 2.30%, 2.25% and 2.35% of the assimilated C-13 was incorporated into oxalic acid, malic acid, and tartaric acid in rhizosphere of S. alfredii after (CO2)-C-13 assimilation, respectively. Oxalic acid, malic acid, and tartaric acid were the predominant LMWOA in rhizosphere soil solution of hyperaccumulating ecotype (HE) S. alfredii, however, almost no tartaric acid was detected for non-hyperaccumulating ecotype (NHE). Tartaric acid was identified as the unique root exudate from HE S. alfredii which was mainly distributed within the range of rhizosphere 0-6 mm. Tartaric acid significantly increased the solubility of four Cd minerals. HE S. alfredii treated with tartrate + CdCO3 had higher Cd contents and larger biomass than CdCO3 treatment. Cadmium accumulation in HE S. alfredii was promoted by the exudation of tartaric acid, which was highly efficient in Cd solubilization due to the formation of soluble Cd-tartrate complexes.
机译:低分子量有机酸(LMWOA)参与植物对重金属的耐受性,易位和积累。然而,仍然需要确定金属动员中LMTOA分泌的根本机制以及在超蓄积物中的摄取。在这项研究中,设计了一个C-13标记的根际盒子,以研究S.alfredii根际中LMWOA的组成和分布。结果表明,(CO2)-C-13同化后,约有2.30%,2.25%和2.35%的同化C-13被掺入苜蓿链霉菌根际中的草酸,苹果酸和酒石酸中。草酸,苹果酸和酒石酸是高累积生态型(HE)苜蓿链球菌根际土壤溶液中主要的LMTOA,但非高累积生态型(NHE)几乎未检测到酒石酸。酒石酸被鉴定为苜蓿链球菌的独特根系分泌物,主要分布在根际0-6 mm范围内。酒石酸显着提高了四种Cd矿物的溶解度。酒石酸+ CdCO3处理的HE S. alfredii的Cd含量和生物量均大于CdCO3处理。酒石酸的渗出促进了镉在HE苜蓿链球菌中的积累,由于形成可溶性Cd-酒石酸盐络合物,其在Cd增溶中非常有效。

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